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Updated: Apr 25, 2026

Isolation and Differentiation of Stromal Vascular Cells to Beige/Brite Cells
Published on: March 28, 2013
Rosiglitazone enhances apolipoprotein M (Apom) expression in rat's liver
Guanghua Luo1, Yuehua Feng1, Jun Zhang1
11. Comprehensive Laboratory, the Third Affiliated Hospital of Soochow University, Changzhou 213003, P.R. China.
Abstract:
Apolipoprotein M (APOM) has been suggested as a vasculoprotective constituent of high density lipoprotein (HDL), which plays a crucial role behind the mechanism of HDL-mediated anti-atherosclerosis. Previous studies demonstrated that insulin resistance could associate with decreased APOM expressions. In agreement with our previous reports, here, we further confirmed that the insulin sensitivity was also reduced in rats treated with high concentrations of glucose; such effect could be reversed by administration of rosiglitazone, a peroxisome proliferator-activated receptor-γ (PPARγ). The present study shows that Apom expression is significantly affected by either rosiglitazone or hyperglycemia alone without cross interaction with each other, which indicates that the pathway of Apom expression regulating by hyperglycemia might be differed from that by rosiglitazone. Further study indicated that hyperglycemia could significantly inhibit mRNA levels of Lxrb (P=0.0002), small heterodimer partner 1 (Shp1) (P<0.0001), liver receptor homologue-1 (Lrh1) (P=0.0012), ATP-binding cassette transporter 1 (Abca1) (P=0.0012) and Pparb/d (P=0.0043). Two-way ANOVA analysis demonstrated that the interactions between rosiglitazone and infusion of 25% glucose solution on Shp1 (P=0.0054) and Abca1 (4E, P=0.0004) mRNA expression was statistically significant. It is concluded that rosiglitazone could increase Apom expression, of which the detailed mechanism needs to be further investigated. The downregulation of Apom by hyperglycemia might be mainly through decreasing expression of Pparg and followed by inhibiting Lxrb in rats.
Insights
High glucose levels reduce insulin sensitivity and Apolipoprotein M (APOM) expression in rats. Rosiglitazone, a PPARγ agonist, reverses these effects, suggesting distinct regulatory pathways for APOM influenced by hyperglycemia and drug treatment.
Area of Science:
- Biochemistry
- Endocrinology
- Cardiovascular Research
Background:
- Apolipoprotein M (APOM) is a vasculoprotective component of high-density lipoprotein (HDL), implicated in anti-atherosclerosis mechanisms.
- Insulin resistance is associated with reduced APOM expression.
- Hyperglycemia can impair insulin sensitivity.
Purpose of the Study:
- To investigate the effects of hyperglycemia and rosiglitazone on APOM expression in rats.
- To elucidate the molecular pathways involved in APOM regulation by hyperglycemia and rosiglitazone.
Main Methods:
- Rats were treated with high glucose concentrations and/or rosiglitazone.
- mRNA levels of key regulatory genes (Lxrb, Shp1, Lrh1, Abca1, Pparb/d) were analyzed.
- Two-way ANOVA was used to assess interactions between treatments.
Main Results:
- Hyperglycemia significantly reduced mRNA levels of Lxrb, Shp1, Lrh1, Abca1, and Pparb/d.
- Rosiglitazone increased APOM expression.
- Significant interactions were observed between rosiglitazone and glucose on Shp1 and Abca1 mRNA expression.
Conclusions:
- Rosiglitazone enhances APOM expression, though the precise mechanism requires further study.
- Hyperglycemia downregulates APOM, potentially via decreased peroxisome proliferator-activated receptor-gamma (PPARγ) and subsequent inhibition of Lxrb.
- Distinct pathways regulate APOM expression under hyperglycemic conditions versus rosiglitazone treatment.
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